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    • 2. 发明授权
    • System and method for optimizing current overload protection circuit
    • 优化电流过载保护电路的系统和方法
    • US08261230B2
    • 2012-09-04
    • US12774685
    • 2010-05-05
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi HoWei-Chieh Chou
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi HoWei-Chieh Chou
    • G06F17/50G06F9/455G05D17/00
    • G06F17/5063
    • A system for optimizing a current overload protection circuit includes an input device, a data storage device, a central processing device, and a display. The central processing device includes a storage module, a control module, and a calculation module. The storage module stores a VI application therein. The control module receives instructions from the input device and selects virtual electronic components of the current overload protection circuit from the data storage device and connection of the selected electronic components. The current overload protection circuit is completed and run in the VI application; electronic components significantly affecting the maximum protection current are labeled. The calculation module calculates normal distribution samples of the current overload protection circuit based on the labeled electronic components. The display shows whether the current overload protection circuit meets a process capability standard.
    • 用于优化电流过载保护电路的系统包括输入装置,数据存储装置,中央处理装置和显示器。 中央处理装置包括存储模块,控制模块和计算模块。 存储模块在其中存储VI应用。 控制模块从输入设备接收指令,并从数据存储设备中选择电流过载保护电路的虚拟电子部件,并选择电子部件的连接。 电流过载保护电路在VI应用中完成并运行; 显着影响最大保护电流的电子元件被标记。 计算模块基于标记的电子元件计算电流过载保护电路的正态分布样本。 显示屏显示电流过载保护电路是否符合过程能力标准。
    • 4. 发明授权
    • Electronic device and simulation method for checking printed circuit board power loss
    • 用于检查印刷电路板功率损耗的电子设备和仿真方法
    • US08464201B2
    • 2013-06-11
    • US13441849
    • 2012-04-07
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi HoWei-Chieh ChouShin-Ting Yen
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi HoWei-Chieh ChouShin-Ting Yen
    • G06F17/50G06G7/62
    • G06F17/5036G06F2217/78
    • An electronic device reads a layout file of a printed circuit board (PCB) to be manufactured from a storage device, obtains length information and section area information of copper cladding distributed on power source areas and ground trace areas in each of one or more layers of the PCB to be manufactured by analyzing the layout file, and calculates power loss in each of the one or more layers according to the length information, the section area information, a resistance value of the copper cladding, and preset parameters of a power supply module and an integrated circuit (IC) load to be located on the PCB. In response to a determination that the power loss in the layer exceeds a preset range, the electronic device indicates the locations of the power source areas and the ground trace areas of a layer in the PCB layout file which need to be redesigned.
    • 电子设备读取要从存储装置制造的印刷电路板(PCB)的布局文件,获得在一个或多个层中的每一个中的电源区域和地面迹线区域上分布的铜包层的长度信息和截面面积信息 通过分析布局文件来制造PCB,并且根据长度信息,截面面积信息,铜包层的电阻值和电源模块的预设参数来计算一个或多个层中的每一个中的功率损耗 以及位于PCB上的集成电路(IC)负载。 响应于层中的功率损耗超过预设范围的确定,电子设备指示需要重新设计的PCB布局文件中的层的电源区域和地面迹线区域的位置。
    • 6. 发明授权
    • Voltage regulation circuit
    • 电压调节电路
    • US08436681B2
    • 2013-05-07
    • US13008037
    • 2011-01-18
    • Duen-Yi HoChun-Jen ChenWei-Chieh ChouTsung-Sheng Huang
    • Duen-Yi HoChun-Jen ChenWei-Chieh ChouTsung-Sheng Huang
    • G05F1/40
    • H02M3/156H02M2001/0009
    • A voltage regulating circuit includes a pulse width modulation controller, a current sense circuit, a voltage feedback circuit, and a gain-and-bias circuit. The current sense circuit includes an inductor and a capacitor. The voltage feedback circuit includes first and second resistors. The gain-and-bias circuit includes an operational amplifier. A first terminal of the capacitor is connected to an inverting input terminal of the operational amplifier through a third resistor. A second terminal of the capacitor is connected to a non-inverting input terminal of the operational amplifier through a fourth resistor. The inverting input terminal of the amplifier is connected to an output terminal of the operational amplifier through a fifth resistor. The non-inverting input terminal of the operational amplifier is grounded through a sixth resistor. The output terminal of the operational amplifier is connected to the node between the first and second resistors through a seventh resistor.
    • 电压调节电路包括脉宽调制控制器,电流检测电路,电压反馈电路和增益与偏置电路。 电流检测电路包括电感器和电容器。 电压反馈电路包括第一和第二电阻器。 增益和偏置电路包括运算放大器。 电容器的第一端子通过第三电阻器连接到运算放大器的反相输入端子。 电容器的第二端子通过第四电阻器连接到运算放大器的非反相输入端子。 放大器的反相输入端通过第五个电阻连接到运算放大器的输出端。 运算放大器的非反相输入端通过第六个电阻接地。 运算放大器的输出端通过第七电阻连接到第一和第二电阻之间的节点。
    • 10. 发明授权
    • Current balance circuit to keep dynamic balance between currents in power passages of power connector
    • 电流平衡电路,用于在电源连接器的电源通道中保持电流之间的动态平衡
    • US08536852B2
    • 2013-09-17
    • US12730225
    • 2010-03-23
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi Ho
    • Tsung-Sheng HuangChun-Jen ChenDuen-Yi Ho
    • G05F3/30
    • G06F1/26Y10T307/414Y10T307/549
    • A current balance circuit includes a first and a second current sensors, an averager, a first and a second control modules, and a first and a second rheostat elements. The first and second current sensors receive a first current and a second current from a power source respectively and convert the first and second currents into a first and a second voltages. The averager receives the first and second voltages and calculates to obtain an average voltage. The first and second control modules receive the first voltage, the second voltage, and the average voltage, to obtain a first and a second control signals, to control current conduction ability of the first and second rheostat elements, to make the first and second currents keep a dynamic balance.
    • 电流平衡电路包括第一和第二电流传感器,平均器,第一和第二控制模块以及第一和第二变阻器元件。 第一和第二电流传感器分别接收来自电源的第一电流和第二电流,并将第一和第二电流转换成第一和第二电压。 平均器接收第一和第二电压并计算得到平均电压。 第一和第二控制模块接收第一电压,第二电压和平均电压,以获得第一和第二控制信号,以控制第一和第二变阻器元件的电流传导能力,以使第一和第二电流 保持动态平衡。